Reduction of the fast electrons preheating by changing the spike launch time in shock ignition approach
Autor: | M. J. Jafari, Somayeh Rezaei, Amir Hossein Farahbod |
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Rok vydání: | 2016 |
Předmět: |
Physics
Range (particle radiation) Quantitative Biology::Neurons and Cognition Plasma Launch Time 01 natural sciences Atomic and Molecular Physics and Optics 010305 fluids & plasmas Shock (mechanics) Computational physics law.invention Ignition system law 0103 physical sciences HiPER Spike (software development) Area density Atomic physics 010306 general physics |
Zdroj: | The European Physical Journal D. 70 |
ISSN: | 1434-6079 1434-6060 |
DOI: | 10.1140/epjd/e2015-60477-8 |
Popis: | Target characteristic parameters in shock ignition approach before launching the spike pulse are studied using a 1-D hydrodynamic simulation code. By delaying the spike launch time, the shell areal density, ρR, is increased. The enhanced shell areal density prevents the hot electrons preheating of main fuel which in turn is generated from the intense laser plasma interaction with corona. To consider the effect of the spike launch time on the target performance, the target gain for a wide range of spike powers and launch times are computed. It is noticed that for HiPER reference target, few tenth nanoseconds displacement of spike launch time increases the areal density, ρR, value up to 30–70 percent. Furthermore, by choosing an appropriate spike energy and peak power, the optimum target gain is achieved in which the total driver energy is reduced. |
Databáze: | OpenAIRE |
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